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首页> 外文期刊>BMC Microbiology >Ultrastructure and molecular phylogenetic position of a novel euglenozoan with extrusive episymbiotic bacteria: Bihospites bacati n. gen. et sp. (Symbiontida)
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Ultrastructure and molecular phylogenetic position of a novel euglenozoan with extrusive episymbiotic bacteria: Bihospites bacati n. gen. et sp. (Symbiontida)

机译:具有挤压的附生共生细菌的新型钩形虫的超微结构和分子系统发生位置:双歧杆菌。 gen。等。 (Symbiontida)

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摘要

Poorly understood but highly diverse microbial communities exist within anoxic and oxygen-depleted marine sediments. These communities often harbour single-celled eukaryotes that form symbiotic associations with different prokaryotes. During low tides in South-western British Columbia, Canada, vast areas of marine sand become exposed, forming tidal pools. Oxygen-depleted sediments within these pools are distinctively black at only 2-3 cm depth; these layers contain a rich variety of microorganisms, many of which are undescribed. We discovered and characterized a novel (uncultivated) lineage of heterotrophic euglenozoan within these environments using light microscopy, scanning and transmission electron microscopy, serial sectioning and ultrastructural reconstruction, and molecular phylogenetic analyses of small subunit rDNA sequences. Bihospites bacati n. gen. et sp. is a biflagellated microbial eukaryote that lives within low-oxygen intertidal sands and dies within a few hours of exposure to atmospheric oxygen. The cells are enveloped by two different prokaryotic episymbionts: (1) rod-shaped bacteria and (2) longitudinal strings of spherical bacteria, capable of ejecting an internal, tightly wound thread. Ultrastructural data showed that B. bacati possesses all of the euglenozoan synapomorphies. Moreover, phylogenetic analyses of SSU rDNA sequences demonstrated that B. bacati groups strongly with the Symbiontida: a newly established subclade within the Euglenozoa that includes Calkinsia aureus and other unidentified organisms living in low-oxygen sediments. B. bacati also possessed novel features, such as a compact C-shaped rod apparatus encircling the nucleus, a cytostomal funnel and a distinctive cell surface organization reminiscent of the pellicle strips in phagotrophic euglenids. We characterized the ultrastructure and molecular phylogenetic position of B. bacati n. gen. et sp. Molecular phylogenetic analyses demonstrated that this species belongs to the Euglenozoa and currently branches as the earliest diverging member of the Symbiontida. This is concordant with ultrastructural features of B. bacati that are intermediate between C. aureus and phagotrophic euglenids, indicating that the most recent ancestor of the Symbiontida descended from phagotrophic euglenids. Additionally, the extrusive episymbionts in B. bacati are strikingly similar to so-called "epixenosomes", prokaryotes previously described in a ciliate species and identified as members of the Verrucomicrobia. These parallel symbioses increase the comparative context for understanding the origin(s) of extrusive organelles in eukaryotes and underscores how little we know about the symbiotic communities of marine benthic environments.
机译:缺氧和贫氧的海洋沉积物中存在微生物了解程度低但多样性高的微生物。这些社区通常带有单细胞真核生物,与不同的原核生物形成共生联系。在加拿大不列颠哥伦比亚省西南部的退潮期间,大面积的海洋沙被暴露出来,形成潮汐池。这些池中的贫氧沉积物只有2-3 cm的深度明显呈黑色。这些层包含多种微生物,其中许多是未描述的。我们使用光学显微镜,扫描和透射电子显微镜,连续切片和超微结构重建以及小亚基rDNA序列的分子系统发育分析,发现并表征了这些环境中异养的棘生动物的新(未培养)谱系。双歧杆菌gen。等。是一种双鞭毛的微生物真核生物,生活在低氧的潮间带沙中,在暴露于大气氧的几个小时内死亡。这些细胞被两种不同的原核生物共生体包裹:(1)杆状细菌和(2)球形细菌的纵向细绳,能够排出内部紧密缠绕的线。超微结构数据表明,B。bacati拥有所有的真骨动物突触。此外,SSU rDNA序列的系统发育分析表明,芽孢杆菌与Symbiontida密切相关。Symbiontida是Euglenozoa内新建立的一个小分支,其中包括金黄色钙蛋白和其他生活在低氧沉积物中的未知生物。芽孢杆菌还具有新颖的特征,例如包围核的紧凑的C形棒状器械,细胞孔漏斗和独特的细胞表面组织,使人联想到吞噬营养性的前突膜。我们表征了芽孢杆菌的超微结构和分子系统发生位置。 gen。等。分子系统发育分析表明,该物种属于裸藻目,目前作为共生菌的最早分化成员分支。这与芽孢杆菌的超微结构特征相一致,它们位于金黄色葡萄球菌和吞噬营养性藻类之间,这表明共生菌的最新祖先来自吞噬营养性藻类。另外,芽孢杆菌中的挤压表生共生体与所谓的“表皮体”惊人地相似,前体原核体在纤毛虫中已有描述,被鉴定为疣状微生物。这些平行的共生体增加了理解真核生物中挤出细胞器起源的比较背景,并强调了我们对海洋底栖环境的共生群落了解甚少。

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